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Showing 1 to 15 of 40 results Save | Export
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Soares, A. A.; Cantão, R. F.; Pinheiro, J. B., Jr.; Castro, F. G. – Physics Education, 2022
We present an experiment designed to study standing waves in a tube with one closed end. Two smartphones are used, one to emit a sound signal with a chosen frequency and another equipped with a microphone to detect the sound pressure level inside the tube. Due to the finite diameter of the tube, the standing wave node (or antinode) appears…
Descriptors: Science Instruction, Science Experiments, Telecommunications, Handheld Devices
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Bouquet, F.; Creutzer, G.; Dorsel, D.; Vince, J.; Bobroff, J. – Physics Education, 2022
Using smartphones in experimental physics teaching offers many advantages in terms of engagement, pedagogy and flexibility. But it presents drawbacks such as possibly endangering the device and also facing the heterogeneity of available sensors on different smartphones. We present a low-cost alternative that preserves the advantages of…
Descriptors: Telecommunications, Handheld Devices, Science Experiments, Physics
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Kaps, A.; Stallmach, F. – Physics Teacher, 2020
The dynamics of a spring pendulum is an important topic in introductory experimental physics courses at universities and advanced science courses in secondary school education. Different types of pendulum setups with smartphones were proposed to investigate, e.g., the gravitational acceleration, to measure spring constants, or to illustrate and…
Descriptors: Telecommunications, Handheld Devices, Physics, College Science
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Borrull, Anna; Valls, Cristina – Journal of Turkish Science Education, 2021
Practical work as observation and experimentation are vital parts of science education. One way to accomplish this is by applying inquiry-based learning in laboratory activities. Inquiry enhances the development of scientific skills as well as the learning of the scientific concepts. In the present article, a laboratory activity was developed to…
Descriptors: Telecommunications, Handheld Devices, Science Instruction, Inquiry
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Kajornklin, Penbhorn; Jarujamrus, Purim; Phanphon, Phuwadon; Ngernpradab, Pakakan; Supasorn, Saksri; Chairam, Sanoe; Amatatongchai, Maliwan – Journal of Chemical Education, 2020
This work reports the first use of rubber latex waste as the hydrophobic reagent for a low-cost, simple, and rapid fabrication of a paper towel-based experimental device (PTED) with a circular design of 5 mm to demonstrate the factors affecting chemical equilibrium; this serves as a user-friendly means for a laboratory experiment. The illustration…
Descriptors: Secondary School Science, College Science, Science Experiments, Science Equipment
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Le, Anh Duc; Nguyen, Quoc B.; Tran, Ngoc Chat; Nguyen, Ngoc Hung – Physics Education, 2021
In Vietnam, nuclear physics is a fundamental part of the national curriculum for physics. However, due to a lack of experimental apparatus (detectors, radioactive sources, etc) at most of the schools, the majority of students do not have opportunities to experience the phenomena behind the concepts. Moreover, safety is another major concern when…
Descriptors: Foreign Countries, Nuclear Physics, Science Equipment, Measurement Equipment
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Meelapsom, Rattapol; Rattanakaroonjit, Waranphat; Prakobkij, Akarapong; Malahom, Nutthaporn; Supasorn, Saksri; Ruangchai, Sukhum; Jarujamrus, Purim – Journal of Chemical Education, 2022
The present work describes a simple hands-on experiment kit for colorimetric quantification of ferric (III) ion (Fe[superscript 3+]) in an aqueous medium using anthocyanin extracted from "Ruellia tuberosa" L. as a green indicator. The extraction of a high amount of anthocyanin was easily accomplished by using only hot water instead of an…
Descriptors: Science Instruction, Chemistry, Hands on Science, Science Experiments
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Ahmed, A. Ait Ben; Touache, A.; ElHakimi, A.; Chamat, A. – Physics Education, 2022
The dynamic study of pendulum systems is considered an indispensable subject for physics and mechanics students in colleges and high schools. In this paper, a detailed methodology is given concerning the use of smartphones in pedagogical practical work for studying the dynamics of pendulum systems. Whereas, three aspects have been discussed…
Descriptors: Science Instruction, Mechanics (Physics), College Science, Secondary School Science
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Zhdanov, Arsenii; Pyay, Anna – Physics Teacher, 2022
Mobile phones are a widely used platform for educational apps, mobile health, and a variety of chemical tests. Here, we are working on a mobile phone-based physics lab (mPhysics) that uses a mobile phone's capabilities to run simple physics experiments and demonstrations. While a mobile phone can be used to analyze magnetic and optical properties…
Descriptors: Telecommunications, Handheld Devices, Physics, Science Instruction
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Laotreephet, Pimpakarn; Khemmani, Supitch; Puttharugsa, Chokchai – Physics Education, 2020
This paper demonstrated a simple experiment for determining the coefficient of rolling friction of a hollow cylinder rolling on a curved track using a smartphone's sensors. We studied theoretically and experimentally the rolling motion of a hollow cylinder uncovered and covered with various materials (synthetic leather and sponge sheets). The…
Descriptors: Science Instruction, Physics, Motion, Scientific Concepts
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Soares, Antonio Augusto; Henrique, Ricardo Longhi – Physics Teacher, 2021
Experiments using smartphones allow for teaching physics concepts in a fun and engaging way and including interdisciplinary approaches. The exploratory character of the experimental activities, along with the smartphones' embedded technologies, when applied in the high school classroom, also has the potential to awake the students' intrinsic…
Descriptors: Science Instruction, Physics, Teaching Methods, Telecommunications
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Jiang, Shiyan; Tatar, Cansu; Huang, Xudong; Sung, Shannon H.; Xie, Charles – Journal of Educational Computing Research, 2022
Augmented reality (AR) has the potential to fundamentally transform science education by making learning of abstract science ideas tangible and engaging. However, little is known about how students interacted with AR technologies and how these interactions may affect learning performance in science laboratories. This study examined high school…
Descriptors: Computer Simulation, Science Instruction, Science Laboratories, High School Students
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Thy, Savrin; Iwayama, Tsutomu – Physics Education, 2021
This paper presents a thorough method for studying the interference of water waves. The study aimed: (a) to demonstrate the interaction of two coherent waves, which creates interference patterns, and (b) to analyse the interference patterns. Three main tools were employed: a simplified ripple tank to experiment, a smartphone camera to record the…
Descriptors: Science Instruction, Physics, Scientific Concepts, Science Experiments
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Liu, Qingtang; Yu, Shufan; Chen, Wenli; Wang, Qiyun; Xu, Suxiao – Journal of Computer Assisted Learning, 2021
While the use of experiments is important for developing students' scientific knowledge and skills, challenges may arise when teachers and students are conducting experiments in class, such as non-reusable experimental resources, safety issues and difficulties simulating some specific effects. Augmented reality (AR) technology affords an…
Descriptors: Science Experiments, Computer Simulation, Magnets, Junior High School Students
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Ekin, Sabit; O'Hara, John F.; Turgut, Emrah; Colston, Nicole; Young, Jeffrey L. – IEEE Transactions on Education, 2021
Contribution: A do-it-yourself (DIY) light wave sensing (LWS) and communication project was developed to generate interest and clarify basic electromagnetic (EM) and wireless sensing/communication concepts among students at different education levels from middle school to undergraduate. This article demonstrates the nature of the project and its…
Descriptors: Science Education, Science Instruction, Scientific Concepts, Hands on Science
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